Lentiviral delivery of short hairpin RNAs protects CD4 T cells from multiple clades and primary isolates of HIV

被引:70
作者
Lee, SK
Dykxhoorn, DM
Kumar, P
Ranjbar, S
Song, E
Maliszewski, LE
François-Bongarçon, V
Goldfeld, A
Swamy, NM
Lieberman, J
Shankar, P
机构
[1] CBR Inst Biomed Res, Boston, MA 02115 USA
[2] Harvard Univ, Sch Med, Dept Pediat, Boston, MA 02115 USA
关键词
D O I
10.1182/blood-2004-10-3959
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Viral heterogeneity is a major hurdle for potential therapeutic use of RNA interference (RNA!) against HIV-1. To determine the extent of RNAi tolerance to mutations, we tested 3 viral target sites with differing propensity for mutations: a highly variable rev sequence, a gag sequence conserved only among clade B isolates, and a vif sequence highly conserved across clades. Lentiviral expression of all 3 shRNAs inhibited replication of the homologous HIVIIIB strain. However, they differed in their ability to protect primary CD4 T cells against multiple isolates within and across HIV clades. The least conserved rev sequence inhibited only 2 of 5 clade B isolates. The gag sequence (conserved within clade B) protected 5 of 5 clade B isolates but not other clade viruses with 2 or 3 mutations in the central region. In contrast, the vif sequence, which was conserved across clades except for single mutations at positions 14 and 17, inhibited viruses from 5 different clades. Moreover, siRNAs with introduced mutations at sites of gag sequence polymorphisms showed reduced antiviral activity, whereas mutations in vif siRNA only modestly decreased silencing. Thus, although 1 or 2 mutations at peripheral sites are tolerated, mutations in the central target cleavage region abolish RNAi activity.
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收藏
页码:818 / 826
页数:9
相关论文
共 50 条
[1]  
Akkina R, 2003, ANTICANCER RES, V23, P1997
[2]   Tolerance for mutations and chemical modifications in a siRNA [J].
Amarzguioui, M ;
Holen, T ;
Babaie, E ;
Prydz, H .
NUCLEIC ACIDS RESEARCH, 2003, 31 (02) :589-595
[3]   Potent suppression of HIV type 1 infection by a short hairpin anti-CXCR4 siRNA [J].
Anderson, J ;
Banerjea, A ;
Planelles, V ;
Akkina, R .
AIDS RESEARCH AND HUMAN RETROVIRUSES, 2003, 19 (08) :699-706
[4]   Inhibition of HIV-1 by lentiviral vector-transduced siRNAs in T lymphocytes differentiated in SCID-hu mice and CD34+ progenitor cell-derived macrophages [J].
Banerjea, A ;
Li, MJ ;
Bauer, G ;
Remling, L ;
Lee, NS ;
Rossi, J ;
Akkina, R .
MOLECULAR THERAPY, 2003, 8 (01) :62-71
[5]   Human immunodeficiency virus type 1 escape from RNA interference [J].
Boden, D ;
Pusch, O ;
Lee, F ;
Tucker, L ;
Ramratnam, B .
JOURNAL OF VIROLOGY, 2003, 77 (21) :11531-11535
[6]   The efficacy of small interfering RNAs targeted to the type 1 insulin-like growth factor receptor (IGF1R) is influenced by secondary structure in the IGF1R transcript [J].
Bohula, EA ;
Salisbury, AJ ;
Sohail, M ;
Playford, MP ;
Riedemann, J ;
Southern, EM ;
Macaulay, VM .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (18) :15991-15997
[7]   Stable suppression of tumorigenicity by virus-mediated RNA interference [J].
Brummelkamp, TR ;
Bernards, R ;
Agami, R .
CANCER CELL, 2002, 2 (03) :243-247
[8]   Inhibition of HIV-1 infection by small interfering RNA-mediated RNA interference [J].
Capodici, J ;
Karikó, K ;
Weissman, D .
JOURNAL OF IMMUNOLOGY, 2002, 169 (09) :5196-5201
[9]   Different evolutionary patterns are found within human immunodeficiency virus type 1-infected patients [J].
Casado, C ;
García, S ;
Rodríguez, C ;
del Romero, J ;
Bello, G ;
López-Galíndez, C .
JOURNAL OF GENERAL VIROLOGY, 2001, 82 :2495-2508
[10]   RNA interference: traveling in the cell and gaining functions? [J].
Cerutti, H .
TRENDS IN GENETICS, 2003, 19 (01) :39-46